Published 1987 | Version v1
Book

Scaling of rotation and isotope separation in a vacuum-arc centrifuge

  • 1. Section of Applied Physics, Yale Univ., New Haven, CT 06520

Description

Scaling is described of rotation, plasma column size and separation in a vacuum-arc centrifuge. The vacuum-arc centrifuge is a magnetized, fulled ionized, quasineutral column of plasma. The source of plasma is a vacuum-arc discharge between a negatively biased cathode and a grounded mesh anode. Rigid-body rotation, induced by the J x B force, caused radial, centrifugal separation of isotopes in the plasma column. Salient features of a fluid model that provides an understanding of rotation and the concomitant isotope separation in the vacuum-arc centrifuge are described. Scaling of rotation and plasma column size is found be consistent with the model. Measurements of isotope separation, also found to agree with the predictions of the model, are presented. Results of a parametric analysis of isotope separation in such a vacuum-arc centrifuge, using the fluid model and the observed scaling laws, are described. An analysis of the energy cost of separation of the vacuum-arc centrifuge shows that it typically requires only 70 keV/separated atom

Additional details

Publishing Information

Publisher
Elsevier Science Pub. Co. Inc.
Imprint Place
New York, NY (USA)
Imprint Title
Electromagnetic isotope separators and techniques related to their applications
Journal Page Range
p. 65-71.

Conference

Title
11. international conference on electromagnetic isotope separators and techniques related to their applications.
Dates
18-22 Aug 1986.
Place
Los Alamos, NM (USA).

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
19023063
Subject category
S07: ISOTOPES AND RADIATION SOURCES;
Resource subtype / Literary indicator
Conference
Descriptors DEI
GAS CENTRIFUGATION; GAS CENTRIFUGES; MATHEMATICAL MODELS; MEASURING METHODS; PLASMA; ROTATION; SCALE MODELS; VACUUM SYSTEMS
Descriptors DEC
CENTRIFUGATION; CENTRIFUGES; SEPARATION PROCESSES; STRUCTURAL MODELS